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用于无线体域网的灵活服务质量模型

Flexible quality of service model for wireless body area sensor networks.

作者信息

Liao Yangzhe, Leeson Mark S, Higgins Matthew D

机构信息

School of Engineering , University of Warwick , Coventry CV4 7AL , UK.

出版信息

Healthc Technol Lett. 2016 Mar 16;3(1):12-5. doi: 10.1049/htl.2015.0049. eCollection 2016 Mar.

Abstract

Wireless body area sensor networks (WBASNs) are becoming an increasingly significant breakthrough technology for smart healthcare systems, enabling improved clinical decision-making in daily medical care. Recently, radio frequency ultra-wideband technology has developed substantially for physiological signal monitoring due to its advantages such as low-power consumption, high transmission data rate, and miniature antenna size. Applications of future ubiquitous healthcare systems offer the prospect of collecting human vital signs, early detection of abnormal medical conditions, real-time healthcare data transmission and remote telemedicine support. However, due to the technical constraints of sensor batteries, the supply of power is a major bottleneck for healthcare system design. Moreover, medium access control (MAC) needs to support reliable transmission links that allow sensors to transmit data safely and stably. In this Letter, the authors provide a flexible quality of service model for ad hoc networks that can support fast data transmission, adaptive schedule MAC control, and energy efficient ubiquitous WBASN networks. Results show that the proposed multi-hop communication ad hoc network model can balance information packet collisions and power consumption. Additionally, wireless communications link in WBASNs can effectively overcome multi-user interference and offer high transmission data rates for healthcare systems.

摘要

无线体域网(WBASNs)正成为智能医疗系统中一项日益重要的突破性技术,有助于在日常医疗中改善临床决策。近来,射频超宽带技术因其低功耗、高传输数据速率和微型天线尺寸等优势,在生理信号监测方面得到了长足发展。未来无处不在的医疗系统应用有望实现收集人体生命体征、早期发现异常病症、实时医疗数据传输以及远程远程医疗支持。然而,由于传感器电池的技术限制,供电是医疗系统设计的主要瓶颈。此外,介质访问控制(MAC)需要支持可靠的传输链路,以使传感器能够安全稳定地传输数据。在本信函中,作者为自组织网络提供了一种灵活的服务质量模型,该模型能够支持快速数据传输、自适应调度MAC控制以及节能型无处不在的WBASN网络。结果表明,所提出的多跳通信自组织网络模型能够平衡信息包冲突和功耗。此外,WBASNs中的无线通信链路能够有效克服多用户干扰,并为医疗系统提供高传输数据速率。

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